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Effect of structural parameters of spindle system of ultra-high speed grinder on critical speed and vibration mode

机译:超高速磨床主轴系统结构参数对临界转速和振动模式的影响

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摘要

Based on the transfer-matrix method and taking into consideration the gyroscopic couple, the shear, the variable cross-section and other influential factors, a dynamic model was established for the multi-disk rotor of the rotor-bearing system of the grinder spindle. The critical speeds of first three orders, the modes of variation and other dynamic characteristic parameters of the grinder spindle were calculated. The influences of the axial pre-tightening force of the bearing, the span of the fulcrum bearing as well as the changes in the front and rear overhangs on the critical speed of the rotor-bearing system on the grinder spindle and their pattern of changes were analysed. The results showed that the working speed of the spindle system is much lower than the primary critical speed and can therefore stay away the resonance range effectively. Furthermore, the span of the fulcrum bearing and the overhang had significant influences on the critical speed within a certain range.
机译:基于传递矩阵法,并考虑陀螺耦合,剪切,变截面等影响因素,建立了磨床主轴转子轴承系统多盘转子动力学模型。计算了磨头主轴的前三个阶的临界速度,变化模式和其他动态特性参数。轴承的轴向预紧力,支点轴承的跨度以及前后悬垂的变化对磨床主轴上的转子轴承系统的临界速度及其变化方式的影响是分析。结果表明,主轴系统的工作速度远低于初级临界速度,因此可以有效地远离共振范围。此外,支点轴承的跨度和悬伸对一定范围内的临界速度有重大影响。

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